Chris@16: // Chris@16: // bind/mem_fn_template.hpp Chris@16: // Chris@16: // Do not include this header directly Chris@16: // Chris@16: // Copyright (c) 2001 Peter Dimov and Multi Media Ltd. Chris@16: // Chris@16: // Distributed under the Boost Software License, Version 1.0. (See Chris@16: // accompanying file LICENSE_1_0.txt or copy at Chris@16: // http://www.boost.org/LICENSE_1_0.txt) Chris@16: // Chris@16: // See http://www.boost.org/libs/bind/mem_fn.html for documentation. Chris@16: // Chris@16: Chris@16: #if !defined(BOOST_NO_FUNCTION_TEMPLATE_ORDERING) Chris@16: # define BOOST_MEM_FN_ENABLE_CONST_OVERLOADS Chris@16: #endif Chris@16: Chris@16: // mf0 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(mf0) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: typedef T * argument_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) ()) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(mf0)(F f): f_(f) {} Chris@16: Chris@16: R operator()(T * p) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (p->*f_)(); Chris@16: } Chris@16: Chris@16: template R operator()(U & u) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p); Chris@16: } Chris@16: Chris@16: #ifdef BOOST_MEM_FN_ENABLE_CONST_OVERLOADS Chris@16: Chris@16: template R operator()(U const & u) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p); Chris@16: } Chris@16: Chris@16: #endif Chris@16: Chris@16: R operator()(T & t) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(mf0) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(mf0) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // cmf0 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(cmf0) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: typedef T const * argument_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) () const) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(cmf0)(F f): f_(f) {} Chris@16: Chris@16: template R operator()(U const & u) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p); Chris@16: } Chris@16: Chris@16: R operator()(T const & t) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(cmf0) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(cmf0) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // mf1 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(mf1) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: typedef T * first_argument_type; Chris@16: typedef A1 second_argument_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1)) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(mf1)(F f): f_(f) {} Chris@16: Chris@16: R operator()(T * p, A1 a1) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (p->*f_)(a1); Chris@16: } Chris@16: Chris@16: template R operator()(U & u, A1 a1) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1); Chris@16: } Chris@16: Chris@16: #ifdef BOOST_MEM_FN_ENABLE_CONST_OVERLOADS Chris@16: Chris@16: template R operator()(U const & u, A1 a1) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1); Chris@16: } Chris@16: Chris@16: #endif Chris@16: Chris@16: R operator()(T & t, A1 a1) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(mf1) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(mf1) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // cmf1 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(cmf1) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: typedef T const * first_argument_type; Chris@16: typedef A1 second_argument_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1) const) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(cmf1)(F f): f_(f) {} Chris@16: Chris@16: template R operator()(U const & u, A1 a1) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1); Chris@16: } Chris@16: Chris@16: R operator()(T const & t, A1 a1) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(cmf1) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(cmf1) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // mf2 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(mf2) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1, A2)) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1, B2 & b2) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1, b2); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1, B2 & b2) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1, b2); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(mf2)(F f): f_(f) {} Chris@16: Chris@16: R operator()(T * p, A1 a1, A2 a2) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (p->*f_)(a1, a2); Chris@16: } Chris@16: Chris@16: template R operator()(U & u, A1 a1, A2 a2) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2); Chris@16: } Chris@16: Chris@16: #ifdef BOOST_MEM_FN_ENABLE_CONST_OVERLOADS Chris@16: Chris@16: template R operator()(U const & u, A1 a1, A2 a2) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2); Chris@16: } Chris@16: Chris@16: #endif Chris@16: Chris@16: R operator()(T & t, A1 a1, A2 a2) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1, a2); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(mf2) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(mf2) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // cmf2 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(cmf2) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1, A2) const) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1, B2 & b2) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1, b2); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1, B2 & b2) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1, b2); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(cmf2)(F f): f_(f) {} Chris@16: Chris@16: template R operator()(U const & u, A1 a1, A2 a2) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2); Chris@16: } Chris@16: Chris@16: R operator()(T const & t, A1 a1, A2 a2) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1, a2); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(cmf2) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(cmf2) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // mf3 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(mf3) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1, A2, A3)) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1, B2 & b2, B3 & b3) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1, b2, b3); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1, B2 & b2, B3 & b3) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1, b2, b3); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(mf3)(F f): f_(f) {} Chris@16: Chris@16: R operator()(T * p, A1 a1, A2 a2, A3 a3) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (p->*f_)(a1, a2, a3); Chris@16: } Chris@16: Chris@16: template R operator()(U & u, A1 a1, A2 a2, A3 a3) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3); Chris@16: } Chris@16: Chris@16: #ifdef BOOST_MEM_FN_ENABLE_CONST_OVERLOADS Chris@16: Chris@16: template R operator()(U const & u, A1 a1, A2 a2, A3 a3) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3); Chris@16: } Chris@16: Chris@16: #endif Chris@16: Chris@16: R operator()(T & t, A1 a1, A2 a2, A3 a3) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1, a2, a3); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(mf3) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(mf3) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // cmf3 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(cmf3) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1, A2, A3) const) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1, B2 & b2, B3 & b3) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1, b2, b3); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1, B2 & b2, B3 & b3) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1, b2, b3); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(cmf3)(F f): f_(f) {} Chris@16: Chris@16: template R operator()(U const & u, A1 a1, A2 a2, A3 a3) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3); Chris@16: } Chris@16: Chris@16: R operator()(T const & t, A1 a1, A2 a2, A3 a3) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1, a2, a3); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(cmf3) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(cmf3) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // mf4 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(mf4) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1, A2, A3, A4)) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1, b2, b3, b4); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1, b2, b3, b4); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(mf4)(F f): f_(f) {} Chris@16: Chris@16: R operator()(T * p, A1 a1, A2 a2, A3 a3, A4 a4) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (p->*f_)(a1, a2, a3, a4); Chris@16: } Chris@16: Chris@16: template R operator()(U & u, A1 a1, A2 a2, A3 a3, A4 a4) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3, a4); Chris@16: } Chris@16: Chris@16: #ifdef BOOST_MEM_FN_ENABLE_CONST_OVERLOADS Chris@16: Chris@16: template R operator()(U const & u, A1 a1, A2 a2, A3 a3, A4 a4) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3, a4); Chris@16: } Chris@16: Chris@16: #endif Chris@16: Chris@16: R operator()(T & t, A1 a1, A2 a2, A3 a3, A4 a4) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1, a2, a3, a4); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(mf4) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(mf4) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // cmf4 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(cmf4) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1, A2, A3, A4) const) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1, b2, b3, b4); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1, b2, b3, b4); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(cmf4)(F f): f_(f) {} Chris@16: Chris@16: template R operator()(U const & u, A1 a1, A2 a2, A3 a3, A4 a4) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3, a4); Chris@16: } Chris@16: Chris@16: R operator()(T const & t, A1 a1, A2 a2, A3 a3, A4 a4) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1, a2, a3, a4); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(cmf4) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(cmf4) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // mf5 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(mf5) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1, A2, A3, A4, A5)) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1, b2, b3, b4, b5); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1, b2, b3, b4, b5); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(mf5)(F f): f_(f) {} Chris@16: Chris@16: R operator()(T * p, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (p->*f_)(a1, a2, a3, a4, a5); Chris@16: } Chris@16: Chris@16: template R operator()(U & u, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3, a4, a5); Chris@16: } Chris@16: Chris@16: #ifdef BOOST_MEM_FN_ENABLE_CONST_OVERLOADS Chris@16: Chris@16: template R operator()(U const & u, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3, a4, a5); Chris@16: } Chris@16: Chris@16: #endif Chris@16: Chris@16: R operator()(T & t, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1, a2, a3, a4, a5); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(mf5) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(mf5) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // cmf5 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(cmf5) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1, A2, A3, A4, A5) const) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1, b2, b3, b4, b5); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1, b2, b3, b4, b5); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(cmf5)(F f): f_(f) {} Chris@16: Chris@16: template R operator()(U const & u, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3, a4, a5); Chris@16: } Chris@16: Chris@16: R operator()(T const & t, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1, a2, a3, a4, a5); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(cmf5) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(cmf5) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // mf6 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(mf6) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1, A2, A3, A4, A5, A6)) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5, B6 & b6) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1, b2, b3, b4, b5, b6); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5, B6 & b6) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1, b2, b3, b4, b5, b6); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(mf6)(F f): f_(f) {} Chris@16: Chris@16: R operator()(T * p, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (p->*f_)(a1, a2, a3, a4, a5, a6); Chris@16: } Chris@16: Chris@16: template R operator()(U & u, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3, a4, a5, a6); Chris@16: } Chris@16: Chris@16: #ifdef BOOST_MEM_FN_ENABLE_CONST_OVERLOADS Chris@16: Chris@16: template R operator()(U const & u, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3, a4, a5, a6); Chris@16: } Chris@16: Chris@16: #endif Chris@16: Chris@16: R operator()(T & t, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1, a2, a3, a4, a5, a6); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(mf6) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(mf6) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // cmf6 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(cmf6) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1, A2, A3, A4, A5, A6) const) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5, B6 & b6) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1, b2, b3, b4, b5, b6); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5, B6 & b6) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1, b2, b3, b4, b5, b6); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(cmf6)(F f): f_(f) {} Chris@16: Chris@16: template R operator()(U const & u, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3, a4, a5, a6); Chris@16: } Chris@16: Chris@16: R operator()(T const & t, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1, a2, a3, a4, a5, a6); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(cmf6) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(cmf6) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // mf7 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(mf7) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1, A2, A3, A4, A5, A6, A7)) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5, B6 & b6, B7 & b7) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1, b2, b3, b4, b5, b6, b7); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5, B6 & b6, B7 & b7) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1, b2, b3, b4, b5, b6, b7); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(mf7)(F f): f_(f) {} Chris@16: Chris@16: R operator()(T * p, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6, A7 a7) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (p->*f_)(a1, a2, a3, a4, a5, a6, a7); Chris@16: } Chris@16: Chris@16: template R operator()(U & u, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6, A7 a7) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3, a4, a5, a6, a7); Chris@16: } Chris@16: Chris@16: #ifdef BOOST_MEM_FN_ENABLE_CONST_OVERLOADS Chris@16: Chris@16: template R operator()(U const & u, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6, A7 a7) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3, a4, a5, a6, a7); Chris@16: } Chris@16: Chris@16: #endif Chris@16: Chris@16: R operator()(T & t, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6, A7 a7) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1, a2, a3, a4, a5, a6, a7); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(mf7) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(mf7) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // cmf7 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(cmf7) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1, A2, A3, A4, A5, A6, A7) const) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5, B6 & b6, B7 & b7) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1, b2, b3, b4, b5, b6, b7); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5, B6 & b6, B7 & b7) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1, b2, b3, b4, b5, b6, b7); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(cmf7)(F f): f_(f) {} Chris@16: Chris@16: template R operator()(U const & u, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6, A7 a7) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3, a4, a5, a6, a7); Chris@16: } Chris@16: Chris@16: R operator()(T const & t, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6, A7 a7) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1, a2, a3, a4, a5, a6, a7); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(cmf7) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(cmf7) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // mf8 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(mf8) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1, A2, A3, A4, A5, A6, A7, A8)) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5, B6 & b6, B7 & b7, B8 & b8) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1, b2, b3, b4, b5, b6, b7, b8); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5, B6 & b6, B7 & b7, B8 & b8) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1, b2, b3, b4, b5, b6, b7, b8); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(mf8)(F f): f_(f) {} Chris@16: Chris@16: R operator()(T * p, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6, A7 a7, A8 a8) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (p->*f_)(a1, a2, a3, a4, a5, a6, a7, a8); Chris@16: } Chris@16: Chris@16: template R operator()(U & u, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6, A7 a7, A8 a8) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3, a4, a5, a6, a7, a8); Chris@16: } Chris@16: Chris@16: #ifdef BOOST_MEM_FN_ENABLE_CONST_OVERLOADS Chris@16: Chris@16: template R operator()(U const & u, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6, A7 a7, A8 a8) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3, a4, a5, a6, a7, a8); Chris@16: } Chris@16: Chris@16: #endif Chris@16: Chris@16: R operator()(T & t, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6, A7 a7, A8 a8) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1, a2, a3, a4, a5, a6, a7, a8); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(mf8) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(mf8) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: // cmf8 Chris@16: Chris@16: template class BOOST_MEM_FN_NAME(cmf8) Chris@16: { Chris@16: public: Chris@16: Chris@16: typedef R result_type; Chris@16: Chris@16: private: Chris@16: Chris@16: BOOST_MEM_FN_TYPEDEF(R (BOOST_MEM_FN_CC T::*F) (A1, A2, A3, A4, A5, A6, A7, A8) const) Chris@16: F f_; Chris@16: Chris@16: template R call(U & u, T const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5, B6 & b6, B7 & b7, B8 & b8) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (u.*f_)(b1, b2, b3, b4, b5, b6, b7, b8); Chris@16: } Chris@16: Chris@16: template R call(U & u, void const *, B1 & b1, B2 & b2, B3 & b3, B4 & b4, B5 & b5, B6 & b6, B7 & b7, B8 & b8) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (get_pointer(u)->*f_)(b1, b2, b3, b4, b5, b6, b7, b8); Chris@16: } Chris@16: Chris@16: public: Chris@16: Chris@16: explicit BOOST_MEM_FN_NAME(cmf8)(F f): f_(f) {} Chris@16: Chris@16: R operator()(T const * p, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6, A7 a7, A8 a8) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (p->*f_)(a1, a2, a3, a4, a5, a6, a7, a8); Chris@16: } Chris@16: Chris@16: template R operator()(U const & u, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6, A7 a7, A8 a8) const Chris@16: { Chris@16: U const * p = 0; Chris@16: BOOST_MEM_FN_RETURN call(u, p, a1, a2, a3, a4, a5, a6, a7, a8); Chris@16: } Chris@16: Chris@16: R operator()(T const & t, A1 a1, A2 a2, A3 a3, A4 a4, A5 a5, A6 a6, A7 a7, A8 a8) const Chris@16: { Chris@16: BOOST_MEM_FN_RETURN (t.*f_)(a1, a2, a3, a4, a5, a6, a7, a8); Chris@16: } Chris@16: Chris@16: bool operator==(BOOST_MEM_FN_NAME(cmf8) const & rhs) const Chris@16: { Chris@16: return f_ == rhs.f_; Chris@16: } Chris@16: Chris@16: bool operator!=(BOOST_MEM_FN_NAME(cmf8) const & rhs) const Chris@16: { Chris@16: return f_ != rhs.f_; Chris@16: } Chris@16: }; Chris@16: Chris@16: #undef BOOST_MEM_FN_ENABLE_CONST_OVERLOADS